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Research Interest
My research program aims to better understand how the immune system can be used to treat childhood diseases. In children with cancer, the immune system is no longer able to rid the body of cancerous cells. In children with autoimmune diseases the immune system gets rid of healthy cells of the body. We are particularly interested in the metabolism of immune cells. Metabolism consists of all the chemical processes that occur within a living organism that maintain life. In immune cells, this means that building blocks (metabolites) need to be brought in to allow the duplication of a cell by making all crucial parts of new cells. In fast growing immune cells this is especially demanding, since they need to duplicate themselves very rapidly to protect against attacks on the normal function of our bodies by, for instance, infections or cancer. This requires a variety of building blocks, and a lot of energy. For this process, cells can acquire these building blocks from their environment, or make them via intricate biochemical pathways. When the right building blocks are not available, immune cells fail to increase in numbers and cannot perform their job.
We use biochemical and metabolomic techniques to understand what fuel is needed for immune cell function, and how immune cells sense the fuel that is available in their environment.
By closely collaborating with Clinicians and Clinician scientists at BCCHR we are aiming to apply the findings to design better treatments for children with immune related diseases.
My research program aims to better understand how the immune system can be used to treat childhood diseases. In children with cancer, the immune system is no longer able to rid the body of cancerous cells. In children with autoimmune diseases the immune system gets rid of healthy cells of the body. We are particularly interested in the metabolism of immune cells. Metabolism consists of all the chemical processes that occur within a living organism that maintain life. In immune cells, this means that building blocks (metabolites) need to be brought in to allow the duplication of a cell by making all crucial parts of new cells. In fast growing immune cells this is especially demanding, since they need to duplicate themselves very rapidly to protect against attacks on the normal function of our bodies by, for instance, infections or cancer. This requires a variety of building blocks, and a lot of energy. For this process, cells can acquire these building blocks from their environment, or make them via intricate biochemical pathways. When the right building blocks are not available, immune cells fail to increase in numbers and cannot perform their job.
We use biochemical and metabolomic techniques to understand what fuel is needed for immune cell function, and how immune cells sense the fuel that is available in their environment.
By closely collaborating with Clinicians and Clinician scientists at BCCHR we are aiming to apply the findings to design better treatments for children with immune related diseases.
研究兴趣
论文共 48 篇作者统计合作学者相似作者
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Anne-Sophie Archambault, Lauar de Brito Monteiro, Lucas Starchuck, Juhee Oh, Emilia Perraso,Annette Patterson,C. Bruce Verchere,Ramon Klein Geltink
The Journal of Immunologyno. 1_Supplement (2024): 0286_4533-0286_4533
JOURNAL OF PATHOLOGYno. 2 (2024): 160-173
Christina Michalski,Claire Cheung,Ju Hee Oh, Emma Ackermann,Constantin R. Popescu,Anne -Sophie Archambault,Martin A. Prusinkiewicz, Rachel Da Silva,Abdelilah Majdoubi,Marina Vineta Paramo,Rui Yang Xu,Frederic Reicherz,Annette E. Patterson,Liam Golding,Ashish A. Sharma, Chinten J. Lim,Paul C. Orban,Ramon I. Klein Geltink,Pascal M. Lavoie
JCI INSIGHTno. 5 (2024)
Frontiers in cell and developmental biology (2024): 1496884-1496884
Madeline P. Lauener, Erin Tanaka,Ao Mei,Sayeh Abdossamadi,Elena Ostroumov,Ramon I. Klein Geltink, Subra Malarkannan,Kirk R. Schultz
CYTOTHERAPYno. 12 (2024): 1472-1483
Luisa Bopp, Maria Lopez Martinez, Clara Schumacher, Robert Seitz, Manuel Huerta Arana,Henning Klapproth,Dominika Lukas,Ju Hee Oh, Daniela Neumayer, Jan W. Lackmann,Stefan Mueller,Esther von Stebut,Bent Brachvogel,Susanne Brodesser,Ramon I. Klein Geltink,Mario Fabri
ISCIENCEno. 5 (2024)
Soh Ishiguro, Kana Ishida,Rina C. Sakata,Hideto Mori, Mamoru Takana,Samuel King,Omar Bashth, Minori Ichiraku,Nanami Masuyama, Ren Takimoto,Yusuke Kijima,Arman Adel,Hiromi Toyoshima,Motoaki Seki,Ju Hee Oh,Anne-Sophie Archambault,Keiji Nishida,Akihiko Kondo,Satoru Kuhara,Hiroyuki Aburatani,Ramon I. Klein Geltink,Yasuhiro Takashima,Nika Shakiba,Nozomu Yachie
bioRxiv (Cold Spring Harbor Laboratory) (2023)
Joy Edwards-Hicks,Petya Apostolova,Joerg M. Buescher,Hannes Maib,Michal A. Stanczak,Mauro Corrado,Ramon I. Klein Geltink,Maria Elena Maccari,Matteo Villa,Gustavo E. Carrizo,David E. Sanin,Francesc Baixauli,Beth Kelly,Jonathan D. Curtis,Fabian Haessler,Annette Patterson,Cameron S. Field,George Caputa,Ryan L. Kyle, Melanie Soballa,Minsun Cha,Harry Paul,Jacob Martin,Katarzyna M. Grzes,Lea Flachsmann,Michael Mitterer,Liang Zhao,Frances Winkler,David Ali Rafei-Shamsabadi,Frank Meiss,Bertram Bengsch,Robert Zeiser,Daniel J. Puleston,David O’Sullivan,Edward J. Pearce,Erika L. Pearce
Xianbing Zhu,Zheng Fu,Shary Y. Chen,Dionzie Ong, Giulio Aceto,Rebecca Ho,Jutta Steinberger,Anie Monast,Virginie Pilon,Eunice Li,Monica Ta, Kyle Ching,Bianca N. Adams,Gian L. Negri,Luc Choiniere,Lili Fu,Kitty Pavlakis,Patrick Pirrotte,Daina Z. Avizonis,Jeffrey Trent,Bernard E. Weissman,Ramon I. Klein Geltink,Gregg B. Morin,Morag Park,David G. Huntsman,William D. Foulkes,Yemin Wang,Sidong Huang
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作者统计
#Papers: 48
#Citation: 2976
H-Index: 17
G-Index: 30
Sociability: 6
Diversity: 2
Activity: 96
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